The current work examines the effects of model allochtonous (humic substances) and autochtonous (microbial polysaccharides) natural organic matter (NOM) on Pb speciation and bioaccumulation. The results demonstrated that polysaccharides, in particular alginic acid, had complexing properties and effects on Pb bioaccumulation by the green alga Chlorella kessleni that were similar to equivalent complexing capacity of humic substances. Pb uptake decreased in the presence of humic, alginic, and polygalacturonic acids with respect to noncomplexed Pb, but accumulated Pb was higher than predicted from measured Pb2+ concentrations or from previous results obtained in the presence of simple synthetic ligands. An improved fit between experimental obse...
Metal complexation by dissolved organic matter, as humic acids, is considered to decrease metal bioa...
Lead (Pb) pollution from local mines and industrial use increases risks for human, animal, and plant...
Humic substances (HS) act as biostimulants for terrestrial photosynthetic organisms. Their effects o...
Dissolved organic matter (DOM) is a complex mixture of ill-defined components,which makes the quanti...
In order to better understand the relationship between lead speciation and its bioavailability in na...
In order to better understand the relationship between lead speciation and its bioavailability in na...
The present study provides results on the influence of humic substance (HS) photoalteration on lead ...
The present study examines the role of humic acid, as a representative of dissolved organic matter, ...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The effect of pH on Pb bioaccumulation by Chlorella kesslerii was studied. Both Pb uptake fluxes and...
Years of experimentation in well-defined media has demonstrated that trace metal bioavailability sho...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The relationship between lead speciation and its bioaccumulation by the alga Chlorella vulgaris was ...
To better understand the relationship between lead speciation and bioavailability in natural freshwa...
Metal complexation by dissolved organic matter, as humic acids, is considered to decrease metal bioa...
Lead (Pb) pollution from local mines and industrial use increases risks for human, animal, and plant...
Humic substances (HS) act as biostimulants for terrestrial photosynthetic organisms. Their effects o...
Dissolved organic matter (DOM) is a complex mixture of ill-defined components,which makes the quanti...
In order to better understand the relationship between lead speciation and its bioavailability in na...
In order to better understand the relationship between lead speciation and its bioavailability in na...
The present study provides results on the influence of humic substance (HS) photoalteration on lead ...
The present study examines the role of humic acid, as a representative of dissolved organic matter, ...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The effect of pH on Pb bioaccumulation by Chlorella kesslerii was studied. Both Pb uptake fluxes and...
Years of experimentation in well-defined media has demonstrated that trace metal bioavailability sho...
The present study examines the effect of humic acid on the uptake kinetics of Cd(II), Cu(II), and Pb...
The relationship between lead speciation and its bioaccumulation by the alga Chlorella vulgaris was ...
To better understand the relationship between lead speciation and bioavailability in natural freshwa...
Metal complexation by dissolved organic matter, as humic acids, is considered to decrease metal bioa...
Lead (Pb) pollution from local mines and industrial use increases risks for human, animal, and plant...
Humic substances (HS) act as biostimulants for terrestrial photosynthetic organisms. Their effects o...